Novel cabinet lamp
By using quick-connect connectors and a breakable light source panel unit, the problems of dark areas and complex construction in cabinet light splicing are solved, enabling quick and easy multi-segment splicing and embedded installation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HANGZHOU YUZHONG GAOHONG LIGHTING ELECTRICAL
- Filing Date
- 2025-06-16
- Publication Date
- 2026-04-14
AI Technical Summary
When existing cabinet lights are spliced in multiple sections, dark areas are prone to appear at the joints, requiring on-site wire welding, which is complicated. When installed in a recessed manner, the joints need to be enlarged separately.
It adopts quick-connect fittings, including reinforcement parts and insulating sheets, and provides friction through the concave and convex structure of metal springs and plastic parts to achieve quick docking. The light source board is the same length as the lamp body assembly to avoid dark areas, and adopts a breakable light source board unit and a detachable connection structure to simplify the installation process.
It achieves seamless multi-segment splicing without dark areas, and is quick and easy to install, requiring no on-site welding or additional grooving, thus improving construction efficiency and aesthetics.
Smart Images

Figure CN224121152U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cabinet lights, and in particular to a novel cabinet light. Background Technology
[0002] Cabinet lights are used to clearly see clothes in a wardrobe at night or in low light conditions, making it easier to quickly find the clothes you need. They can also be used in open wardrobes or wine cabinets to provide a decorative effect and enhance the aesthetics and ambiance of a room. Because cabinet lights are usually used in conjunction with custom-made furniture such as wardrobes, their length is not fixed. The light fixture needs to be flexible in terms of segmentation and splicing. The following problems may arise when splicing;
[0003] 1. When splicing multiple segments, dark areas may appear at the joints;
[0004] 2. When splicing multiple sections, the lamp body connection points need to be fixed with screws, and the light source board needs to be wired. This operation is usually done on-site, which is quite troublesome during construction.
[0005] 3. When splicing multiple segments, the dimensions of the joints will change. When choosing embedded installation, the grooves at the joints need to be enlarged separately, requiring additional construction.
[0006] Therefore, in order to solve the above problems, how to design a new type of cabinet light is a technical problem that the industry urgently needs to solve. Utility Model Content
[0007] The purpose of this utility model is to provide a new type of cabinet light to solve the problems mentioned in the background art, such as the appearance of dark areas at the joints when splicing multiple sections; the need to fix the lamp body joints with screws and the need to weld the light source board when splicing multiple sections, which is usually done on-site and is relatively troublesome during construction; and the change in the external dimensions of the joints when splicing multiple sections, which requires additional construction work when choosing embedded installation.
[0008] To achieve the above objectives, this utility model provides the following technical solution:
[0009] A novel cabinet light includes several sets of lamp body components. Adjacent lamp body components are connected by quick-connect fittings. Each quick-connect fitting includes a reinforcing member. An insulating sheet is provided on the upper part of the reinforcing member. A set of metal springs is provided on the upper part of the insulating sheet. Each metal spring has an outwardly protruding contact portion. A plastic part is provided above the metal spring and covers the metal spring and the insulating sheet. The reinforcing member and the plastic part are detachably connected. The side of the plastic part has a concave-convex structure. The plastic part has a symmetrical set of guide cavities, and the contact portion of the metal spring is exposed in the guide cavities.
[0010] Preferably, the concave-convex structure is serrated, the reinforcing member is connected to the plastic part by screws and the screws pass through the insulating sheet, and a limiting block is provided at the middle of the end of the plastic part away from the reinforcing member.
[0011] Preferably, the lamp body assembly includes a heat sink, the heat sink having a disassembly cavity, the two ends of the quick-connect connector being pluggably connected to the disassembly cavities of adjacent lamp body assemblies, the heat sink having a light source plate cavity located above the disassembly cavity, the light source plate cavity containing a light source plate of equal length to the lamp body assembly, the heat sink having a limiting cavity located above the light source plate cavity, and the limiting cavity containing a lampshade.
[0012] Preferably, the light source board includes multiple sets of light source board units, and adjacent light source board units are connected by a detachable connection structure. An electrode plate is provided on one end of the light source board unit near the heat sink, and the electrode plate is electrically connected to the contact part of the metal spring sheet.
[0013] Preferably, a non-connection terminal end cap is inserted into the disassembly cavity at the end of the lamp body assembly. The side of the non-connection terminal end cap has a concave-convex structure, and the concave-convex structure is arranged in a sawtooth shape.
[0014] Preferably, a terminal cover is inserted into the disassembly cavity at the starting end of the lamp body assembly. The terminal cover includes a main body, on which an input line is provided. A plastic part two is provided at the end of the main body away from the input line. A set of symmetrical metal springs two is provided inside the plastic part two. The metal springs two contact with the input line to form conductivity. The metal springs two have outwardly protruding contact portions. The outwardly protruding contact portions of the metal springs two are connected to the electrode plate to form an electrical connection.
[0015] Preferably, the side of the second plastic part has a concave-convex structure, and the concave-convex structure is arranged in a sawtooth shape.
[0016] The beneficial effects of this utility model are:
[0017] 1. By inserting one half of the quick-connect connector into the lamp body assembly, and then inserting the other half of the quick-connect connector into another lamp body assembly, with the insertion position using the limiting block as the dividing line, the plastic part in the quick-connect connector has a concave-convex structure on one side to provide sufficient friction, thereby ensuring quick docking within the lamp body assembly. This ensures that no gaps are generated at the docking position. Furthermore, since the light source board is the same length as the lamp body assembly, no dark areas will appear when splicing multiple sections. Moreover, when splicing multiple sections, the installation is quick and does not require the installation of screws and soldering wires.
[0018] 2. For built-in quick-connect connectors, compared to external ones, there is no need to enlarge the slot at the connection point during embedded installation.
[0019] 3. The light source board consists of multiple light source board units. Adjacent light source board units are connected by a detachable and breakable structure, and can be broken without tools according to the required length.
[0020] 4. One side of the plastic part has a concave-convex structure, which is serrated and slightly wider than the disassembly cavity, so as to facilitate connection and prevent it from falling out.
[0021] 5. A limiting block is provided at the middle of one end of the plastic part away from the reinforcement, which serves as a positioning function. When installed in place, the insertion depth of both ends is the same. At this time, the quick-connect connector is connected to the electrode plate on the light source plate on both sides, thus conducting the two adjacent lamp body components.
[0022] 6. The quick-connect fitting has a reinforcing member inside, and the reinforcing member is made of metal. It can withstand the weight of the lamp body assembly during installation and prevent it from breaking at this point. Attached Figure Description
[0023] Figure 1 This is a three-dimensional structural diagram of an embodiment of the present utility model;
[0024] Figure 2 This is an exploded assembly diagram of an embodiment of the present utility model;
[0025] Figure 3 This is an exploded assembly diagram of an embodiment of the present utility model;
[0026] Figure 4 This is an enlarged structural diagram of point A in an embodiment of this utility model;
[0027] Figure 5 This is a schematic diagram showing the disassembled assembly of the quick-connect connector in this utility model;
[0028] Figure 6 This is a schematic diagram of the quick-connect fitting in this utility model;
[0029] Figure 7 This is a schematic diagram of the structure of the terminal cap in this utility model;
[0030] Figure 8 This is a front view of the present invention;
[0031] Figure 9 This is a utility model Figure 8 A diagram of AA in the middle;
[0032] Figure 10 This is a schematic diagram of the structure of the light source board in this utility model;
[0033] Figure 11 This is a schematic diagram of the structure of the light source board in this utility model.
[0034] In the diagram: 1. Terminal end cap; 11. Main body; 12. Input line; 13. Metal spring clip 2; 14. Plastic part 2; 2. Lamp body assembly; 21. Heat sink; 22. Disassembly cavity; 23. Light source board cavity; 24. Limiting cavity; 25. Lamp cover; 26. Light source board; 261. Light source board unit; 262. Electrode plate; 3. Quick-connect connector; 31. Reinforcing part; 32. Insulating sheet; 33. Metal spring clip 1; 34. Plastic part 1; 35. Guide cavity; 36. Limiting block; 4. Non-terminal end cap. Detailed Implementation
[0035] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0036] See Figures 1-11 This utility model provides a novel cabinet light, including several sets of lamp body components 2. Adjacent lamp body components 2 are connected by quick-connect connectors 3. Each quick-connect connector 3 includes a reinforcing member 31. An insulating sheet 32 is provided on the upper part of the reinforcing member 31. A set of metal springs 33 is provided on the upper part of the insulating sheet 32. Each metal spring 33 has an outwardly protruding contact portion. A plastic part 34 is provided above the metal spring 33 and covers the metal spring 33 and the insulating sheet 32. The reinforcing member 31 and the plastic part 34 are detachably connected. The side of the plastic part 34 has a concave-convex structure. The plastic part 34 has a symmetrical set of guide cavities 35. The contact portion of the metal spring 33 is exposed in the guide cavities 35. By inserting the contact portions of the plastic part 34, the reinforcing member 31, and the metal spring 33 of one half of the quick-connect connector 3 into the lamp body assembly 2, the contact portions of the plastic part 34, the reinforcing member 31, and the metal spring 33 of the other half of the quick-connect connector 3 are inserted into another lamp body assembly 2. At this time, the concave and convex structure on the side of the plastic part 34 in the quick-connect connector 3 provides sufficient friction, thereby ensuring quick docking within the lamp body assembly 2. After docking, the contact portion of the metal spring 33 and the metal spring 33 can transmit power to the lamp body assembly 2.
[0037] Optionally, the reinforcement material is metal, which can withstand the weight of the lamp body assembly during installation and prevent breakage at this point.
[0038] See Figure 5Specifically, the convex-concave structure is serrated, the reinforcing member 31 and the plastic part 34 are connected by screws, and the screws pass through the insulating sheet 32. A limiting block 36 is provided at the middle of the end of the plastic part 34 away from the reinforcing member 31. The serrated convex structure provides sufficient friction to ensure the stability of the connection, and the limiting block 36 ensures that the lamp body assembly 2 is inserted in the same position.
[0039] See Figure 2 Specifically, the lamp body assembly 2 includes a heat sink 21, which has a disassembly cavity 22. The two ends of the quick-connect connector 3 are detachably connected to the disassembly cavities 22 of adjacent lamp body assemblies 2. The heat sink 21 has a light source plate cavity 23 located above the disassembly cavity 22. The light source plate cavity 23 contains a light source plate 26, which is the same length as the lamp body assembly 2. The heat sink 21 has a limiting cavity 24 located above the light source plate cavity 23. The limiting cavity 24 contains a lampshade 25. When the quick-connect connector 3 is inserted into the disassembly cavity 22 of the lamp body assembly 2, the convex-concave structure on the side of the plastic part 34 in the quick-connect connector 3 generates sufficient friction with the disassembly cavity 22, and the contact portion of the metal spring 33 presses against the light source plate 26.
[0040] See Figures 8-11 Specifically, the light source board 26 includes multiple sets of light source board units 261. Adjacent light source board units 261 are connected by a detachable and breakable structure. An electrode plate 262 is provided on one end of each light source board unit 261 near the heat sink 21. The electrode plate 262 is electrically connected to the contact portion of the metal spring contact 33. At this time, the contact portion of the metal spring contact 33 presses against the electrode plate 262 of the light source board 26, thus ensuring power transmission to the corresponding light source board 26.
[0041] See Figures 2-3 Specifically, a non-terminal end cap 4 is inserted into the disassembly cavity 22 at the end of the lamp body assembly 2. The non-terminal end cap 4 has a concave-convex structure on its side, and the concave-convex structure is serrated. At this time, the non-terminal end cap 4 is inserted into the disassembly cavity 22 at the end of the last lamp body assembly 2, thereby preventing dust from entering.
[0042] See Figures 2-6Specifically, a terminal cover 1 is inserted into the disassembly cavity 22 at the starting end of the lamp body assembly 2. The terminal cover 1 includes a main body 11, on which an input line 12 is provided. A plastic part 14 is located at the end of the main body 11 away from the input line 12. A set of symmetrical metal spring contacts 13 are located within the plastic part 14. The metal spring contacts 13 contact the input line 12 to form a conductive connection. The metal spring contacts 13 have outwardly protruding contact portions, which connect to the electrode plate 262 to form an electrical connection. With the terminal cover 1 inserted into the disassembly cavity 22 at the starting end of the lamp body assembly 2, when an external power source is connected, the external power is transmitted through the input line 12 to the outwardly protruding contact portions of the metal spring contacts 13, and then through the metal spring contacts 13 to the electrode plate 262 of the starting lamp body assembly 2, thus achieving power supply.
[0043] See Figure 6 Specifically, the side of the second plastic part 14 has a concave-convex structure, which is serrated. This ensures that the second plastic part 14 can provide sufficient friction when inserted into the disassembly cavity 22.
[0044] Working principle of this utility model:
[0045] In use, the contact parts of the plastic part 34, the reinforcement part 31, and the metal spring piece 33 of one half of the quick-connect connector 3 are inserted into the disassembly cavity 22 of the lamp body assembly 2. At the same time, the contact parts of the plastic part 34, the reinforcement part 31, and the metal spring piece 33 of the other half of the quick-connect connector 3 are inserted into the disassembly cavity 22 of the other lamp body assembly 2. The insertion position is divided by the limiting block 36. At this time, the concave and convex structure on the side of the plastic part 34 of the quick-connect connector 3 provides sufficient friction, thereby ensuring quick docking within the lamp body assembly 2 and ensuring that no gaps are generated at the docking position.
[0046] When the ends of adjacent lamp body components 2 are connected, the contact part of the metal spring 33 will press against the electrode plate 262 of the light source board 26 after the connection is completed. At this time, the electrode plate 262 and the contact part of the metal spring 33 are connected to form an electrical connection, thereby ensuring the power transmission of the corresponding light source board 26, thus ensuring the normal use of adjacent lamp body components 2. Based on the above principle, it is possible to connect and install multiple sets of lamp body components 2.
[0047] Afterwards, a terminal cover 1 is inserted into the disassembly cavity 22 at the starting end of the initial lamp body assembly 2. When the external power is connected, the external power is transmitted through the input line 12 to the outward protruding contact part of the metal spring 13, and then through the metal spring 13 to the electrode plate 262 of the initial lamp body assembly 2, thereby realizing power supply. Then, the disassembly cavity 22 at the end of the last lamp body assembly 2 is inserted into the non-terminal cover 4 to prevent dust from entering.
[0048] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions or improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A novel cabinet light, comprising several sets of lamp body components (2), adjacent lamp body components (2) being connected by quick-connect fittings (3), wherein the quick-connect fittings (3) include reinforcing members (31), characterized in that: The upper part of the reinforcement (31) is provided with an insulating sheet (32), and the upper part of the insulating sheet (32) is provided with a set of metal springs (33). The metal springs (33) have outwardly protruding contact portions. A plastic part (34) is provided above the metal springs (33) and covers the metal springs (33) and the insulating sheet (32). The reinforcement (31) and the plastic part (34) are detachably connected. The side of the plastic part (34) has a concave-convex structure. The plastic part (34) is provided with a symmetrical set of guide cavities (35). The contact portions of the metal springs (33) are exposed in the guide cavities (35).
2. The novel cabinet light according to claim 1, characterized in that: The concave-convex structure is serrated. The reinforcing member (31) is connected to the plastic part (34) by screws and the screws pass through the insulating sheet (32). A limiting block (36) is provided in the middle of the end of the plastic part (34) away from the reinforcing member (31).
3. A novel cabinet light according to claim 1, characterized in that: The lamp body assembly (2) includes a heat sink (21), the heat sink (21) has a disassembly cavity (22), the two ends of the quick-connect connector (3) are pluggably connected to the disassembly cavity (22) of the adjacent lamp body assembly (2), the heat sink (21) has a light source plate cavity (23), the light source plate cavity (23) is located above the disassembly cavity (22), the light source plate cavity (23) has a light source plate (26), the light source plate (26) is the same length as the lamp body assembly (2), the heat sink (21) has a limiting cavity (24), the limiting cavity (24) is located above the light source plate cavity (23), and the limiting cavity (24) has a lamp cover (25).
4. A novel cabinet light according to claim 3, characterized in that: The light source board (26) includes multiple sets of adjacent light source board units (261). The adjacent light source board units (261) are connected by a detachable connection structure. An electrode plate (262) is provided on one end of the light source board unit (261) near the heat sink (21). The electrode plate (262) is connected to the contact part of the metal spring sheet (33) to form an electrical connection.
5. A novel cabinet light according to claim 3, characterized in that: A non-connection end cap (4) is inserted into the disassembly cavity (22) at the end of the lamp body assembly (2). The side of the non-connection end cap (4) has a concave-convex structure, which is serrated.
6. A novel cabinet light according to claim 1, characterized in that: A terminal cover (1) is inserted into the disassembly cavity (22) at the starting end of the lamp body assembly (2). The terminal cover (1) includes a main body (11). An input line (12) is provided on the main body (11). A plastic part (14) is provided at one end of the main body (11) away from the input line (12). A set of two metal springs (13) with left and right symmetry is provided in the plastic part (14). The two metal springs (13) contact the input line (12) to form conductivity. The two metal springs (13) have an outwardly protruding contact part. The outwardly protruding contact part of the two metal springs (13) is connected to the electrode plate (262) to form an electrical connection.
7. A novel cabinet light according to claim 6, characterized in that: The side of the second plastic part (14) has a concave-convex structure, which is serrated.